UA- ENLIGHT Workshop - CERN 12-13 Feb 2002 1 U A -EN LIG H T W orkshop-CER N 12-13 Feb 2002 1 THE C N A THE C N A OF THE TERA FOUNDATION OF THE TERA FOUNDATION Ugo Ugo Amaldi Amaldi University of University of Milano Bicocca Milano Bicocca and TE RA F oundation and TE RA F oundation
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Purpose : development of hadrontherapy technologies Not-for-profit created in 1992
Purpose : development of hadrontherapy technologies Not-for-profit created in 1992 Recognised in 1994 by the Health Ministry In 2002: 22 full time employees 8 staff researcher (physicists and engineers) 10 fellows 3 administratives - PowerPoint PPT Presentation
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UA- ENLIGHT Workshop - CERN 12-13 Feb 2002
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UA-ENLIGHT Workshop-CERN 12-13 Feb 2002 1
THE C N ATHE C N A
OF THE TERA FOUNDATIONOF THE TERA FOUNDATION
Ugo Ugo AmaldiAmaldi
University of University of Milano Bicocca Milano Bicocca and TERA Foundationand TERA Foundation
UA- ENLIGHT Workshop - CERN 12-13 Feb 2002
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Purpose: development of hadrontherapy technologies
Not-for-profit created in 1992Recognised in 1994 by the Health Ministry
In 2002: 22 full time employees 8 staff researcher (physicists and engineers) 10 fellows 3 administratives
2 administratives for ISE (ARONA)
TERA has 4 sections: Novara - Geneva - Milan and Genoa
Collaborations: INFN - CERN - ISS - ENEA - AIRO Oncological Institutes and Universities
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THE PROGRAMMES OF TERATHE PROGRAMMES OF TERA
TERANET Programme ATLANTIDE: No-profit portal for scientific research
COMPACT ACCELERATORS Programme IDRA: Institute for Diagnostics and Radiotherapy Applications LIBO: LInac BOoster
CENTRES OF EXCELLENCE Programme CNA: Centro Nazionale Adroterapia
CAP: Computer Assisted Positioning
MAGIC CUBE & PIXEL CHAMBER
PRASSI: Piani Radioterapici con Adroni e Sistema di Scansione
Integrati
SUCIMA: Silicon Ultra fast Cameras for electron and gamma
sources in Medical Applications
TESI: Testata Superconduttrice per Ioni
0.5 MEuro
50 MEuro
5 MEuro
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CNA: VERSION 1995CNA: VERSION 1995
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CNA: VERSION 1998CNA: VERSION 1998
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CNA: VERSION 1999CNA: VERSION 1999
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CNA: PRESENT VERSIONCNA: PRESENT VERSION
Law 348 - 23.12.00 :
CNAO Foundation: Polyclinics of Milan and Pave, National Neurological Institute, European Institute of Oncology, TERA
G. Arbosti -Istituto Neurologico C. Besta Vice-president
M. Bono -European Institute of Oncology
G. Azzaretti -San Matteo
U. Amaldi -TERA
Letter of the Health Minister to the Board:
1. Use the available funds to produce a detailed design of CNA
2. Acquire further clinical information involving the existing Centres
3. Define the technical details of buildings and high-tech components
4. Quantify the needed personnel
5. Prepare a business plans, based on a ‘reasonable’ financial plan
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CNA Phase 2CNA Phase 2vs PIMMSvs PIMMS
7 MeV/u injection energy
Single IH (GSI) linac inside the ring
Multiturn injection
Space minimisation (PS inside the ring)
Integrate functions extraction lines (fan out)
Isocentric gantries for Phase 2
CNA Phase 1 : 3200 m2
-
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CNA: HIGH TECHNOLOGYCNA: HIGH TECHNOLOGY
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CNA HIGH TECH: SOURCES AND LEBTCNA HIGH TECH: SOURCES AND LEBT
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CNA HIGH TECH: LINAC AND MEBTCNA HIGH TECH: LINAC AND MEBT
UA- ENLIGHT Workshop - CERN 12-13 Feb 2002
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CNA HIGH TECH: BETATRON+QUAD+DIPOLECNA HIGH TECH: BETATRON+QUAD+DIPOLE
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CNA HIGH TECH: THE BETATRONCNA HIGH TECH: THE BETATRON
0 V
50 ms
Gephyrotron
Saturne (Saclay)
High-density,slow -moving
Low-density,fast moving
Transversebeam size
ResonancelinesBeam
Extracted beam
x, p/p, Qh
Ripples
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CNA HIGH TECH: QUAD+COR+PU+SEXTCNA HIGH TECH: QUAD+COR+PU+SEXT
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CNA HIGH TECH: SPECS (QUAD) PREPARATIONCNA HIGH TECH: SPECS (QUAD) PREPARATION
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CNA HIGH TECH: DIPOLE CHAMBER PROTOTYPECNA HIGH TECH: DIPOLE CHAMBER PROTOTYPE
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CNA HIGH TECH: VITROVAC RF CAVITYCNA HIGH TECH: VITROVAC RF CAVITY
Bought from
Saclay
(Saturne)
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CNA HIGH TECH: 3 HORIZ+1 VERTCNA HIGH TECH: 3 HORIZ+1 VERT
3 treatment rooms with protons and carbon – 4 beamlines: 3h + 1v
Active scanning and beam FWHM variation (4 -10 mm) at the isocentre
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TESI: THE LIGHT ION GANTRYTESI: THE LIGHT ION GANTRY
B field = 4 T
Lightweight = simplified mechanics
Cryogenic-free superconductor = low power
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CAP: PATIENT POSITIONINGCAP: PATIENT POSITIONING
• 2 TV Cameras• 100 Hz sample rate• 5 mm markers • 2 real-time acquisitions: at each irradiation (immediately before and during the irradiation) • 5 patients• global 3-D accuracy in marker localisation: 0.34 0.11 [mm] (N=4)